Evolutionary Turnover in Wnt Gene Expression but Conservation of Wnt Signaling during Ovary Determination in a TSD Reptile.

IF 2.4 4区 医学 Q2 DEVELOPMENTAL BIOLOGY Sexual Development Pub Date : 2021-01-01 Epub Date: 2021-07-19 DOI:10.1159/000516973
Turk Rhen, Zachary Even, Alaina Brenner, Alexandra Lodewyk, Debojyoti Das, Sunil Singh, Rebecca Simmons
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引用次数: 3

Abstract

Temperature-dependent sex determination (TSD) is a well-known characteristic of many reptilian species. However, the molecular processes linking ambient temperature to determination of gonad fate remain hazy. Here, we test the hypothesis that Wnt expression and signaling differ between female- and male-producing temperatures in the snapping turtle Chelydra serpentina. Canonical Wnt signaling involves secretion of glycoproteins called WNTs, which bind to and activate membrane bound receptors that trigger β-catenin stabilization and translocation to the nucleus where β-catenin interacts with TCF/LEF transcription factors to regulate expression of Wnt targets. Non-canonical Wnt signaling occurs via 2 pathways that are independent of β-catenin: one involves intracellular calcium release (the Wnt/Ca2+ pathway), while the other involves activation of RAC1, JNK, and RHOA (the Wnt/planar cell polarity pathway). We screened 20 Wnt genes for differential expression between female- and male-producing temperatures during sex determination in the snapping turtle. Exposure of embryos to the female-producing temperature decreased expression of 7 Wnt genes but increased expression of 2 Wnt genes and Rspo1 relative to embryos at the male-producing temperature. Temperature also regulated expression of putative Wnt target genes in vivo and a canonical Wnt reporter (6x TCF/LEF sites drive H2B-GFP expression) in embryonic gonadal cells in vitro. Results indicate that Wnt signaling was higher at the female- than at the male-producing temperature. Evolutionary analyses of all 20 Wnt genes revealed that thermosensitive Wnts, as opposed to insensitive Wnts, were less likely to show evidence of positive selection and experienced stronger purifying selection within TSD species.

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TSD爬行动物卵巢决定过程中Wnt基因表达的进化转换和Wnt信号的保护。
温度依赖性性别决定(TSD)是许多爬行动物的一个众所周知的特征。然而,将环境温度与性腺命运联系起来的分子过程仍然不清楚。在这里,我们验证了一种假设,即雌性和雄性鳄龟的Wnt表达和信号在雌性和雄性鳄龟的生产温度之间存在差异。典型的Wnt信号传导涉及被称为Wnt的糖蛋白的分泌,Wnt结合并激活膜结合受体,触发β-catenin稳定并易位到细胞核,在细胞核中β-catenin与TCF/LEF转录因子相互作用以调节Wnt靶点的表达。非典型Wnt信号通过2条独立于β-catenin的途径发生:一条涉及细胞内钙释放(Wnt/Ca2+途径),另一条涉及RAC1、JNK和RHOA的激活(Wnt/平面细胞极性途径)。我们筛选了20个Wnt基因,以研究在鳄龟性别决定过程中雌龟和雄龟产生温度之间的差异表达。相对于雄性温度下的胚胎,雌性温度下的胚胎有7个Wnt基因的表达减少,但有2个Wnt基因和Rspo1的表达增加。温度也调节体内Wnt靶基因的表达和体外胚胎性腺细胞中典型的Wnt报告基因(6个TCF/LEF位点驱动hhb - gfp表达)的表达。结果表明,Wnt信号在雌性产卵温度高于雄性产卵温度。对所有20个Wnt基因的进化分析显示,与不敏感的Wnt基因相比,热敏Wnt基因在TSD物种中表现出积极选择的可能性较小,并且经历了更强的净化选择。
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来源期刊
Sexual Development
Sexual Development 生物-发育生物学
CiteScore
4.00
自引率
4.30%
发文量
25
审稿时长
>12 weeks
期刊介绍: Recent discoveries in experimental and clinical research have led to impressive advances in our knowledge of the genetic and environmental mechanisms governing sex determination and differentiation, their evolution as well as the mutations or endocrine and metabolic abnormalities that interfere with normal gonadal development. ‘Sexual Development’ provides a unique forum for this rapidly expanding field. Its broad scope covers all aspects of genetics, molecular biology, embryology, endocrinology, evolution and pathology of sex determination and differentiation in humans and animals. It publishes high-quality original research manuscripts, review articles, short reports, case reports and commentaries. An internationally renowned and multidisciplinary editorial team of three chief editors, ten prominent scientists serving as section editors, and a distinguished panel of editorial board members ensures fast and author-friendly editorial processing and peer reviewing.
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